Objective: We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional entropy (CE) can be utilized to assess the complexity of the cardiac control in healthy individuals. Methods: An MB estimate of CE was tested in an experimental protocol (i.e., the graded head-up tilt) known to produce a gradual decrease of cardiac control complexity as a result of the progressive vagal withdrawal and concomitant sympathetic activation. The MB approach was compared with traditionally exploited nonlinear model-free (MF) techniques such as corrected approximate entropy, sample entropy, corrected CE, two k-nearest-neighbor CE procedures and permutation CE. Electrocardiogram was recorded in 17 healthy subjects at rest i...
Complexity analysis of short-term cardiovascular control is traditionally performed using entropy-ba...
Objective: Traditional definition of sample entropy (SampEn), here referred to as global SampEn (GSa...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Objective: We test the hypothesis that the linear model-based (MB) approach for the estimation of co...
Objective: We test the hypothesis that the linear model-based (MB) approach for the estimation of co...
OBJECTIVE: We test the hypothesis that the linear model-based (MB) approach for the estimation of c...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
The study evaluates the k-nearest-neighbor (KNN) strategy for the assessment of complexity of the ca...
We compare different estimators of a popular en-tropy-based nonlinear dynamic measure, i.e. the cond...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Complexity analysis of short-term cardiovascular control is traditionally performed using entropy-ba...
Complexity analysis of short-term cardiovascular control is traditionally performed using entropy-ba...
Complexity analysis of short-term cardiovascular control is traditionally performed using entropy-ba...
Objective: Traditional definition of sample entropy (SampEn), here referred to as global SampEn (GSa...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Objective: We test the hypothesis that the linear model-based (MB) approach for the estimation of co...
Objective: We test the hypothesis that the linear model-based (MB) approach for the estimation of co...
OBJECTIVE: We test the hypothesis that the linear model-based (MB) approach for the estimation of c...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
We test the hypothesis that the linear model-based (MB) approach for the estimation of conditional e...
The study evaluates the k-nearest-neighbor (KNN) strategy for the assessment of complexity of the ca...
We compare different estimators of a popular en-tropy-based nonlinear dynamic measure, i.e. the cond...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...
Complexity analysis of short-term cardiovascular control is traditionally performed using entropy-ba...
Complexity analysis of short-term cardiovascular control is traditionally performed using entropy-ba...
Complexity analysis of short-term cardiovascular control is traditionally performed using entropy-ba...
Objective: Traditional definition of sample entropy (SampEn), here referred to as global SampEn (GSa...
Objective: A defining feature of physiological systems under the neuroautonomic regulation is their ...